高地应力
- 网络High geostress;High crustal stress
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根据现场应力解除法测试结果,目前鹧鸪山隧道尚未进入高地应力段,最大主应力量级为17Mpa~20Mpa。
According to the test rust of field stress-relief method , at the present time , Zhe Gu Mount tunnel haven 't access to high crustal stress site , maximum principal stress magnitude is 17Mpa ~ 20Mpa .
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对高地应力场采用了多种方法实测并根据实测成果进行数值模拟分析;
Methods were applied to measure the high crustal stress fields , and the numerical simulation analyses were made based upon the measured results .
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高地应力条件下Q系统在某勘探洞围岩分类中的应用
Application of Q - System in Classification of Surrounding Rock in Tunnel under High Ground - Stress
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高地应力岩爆对TBM施工的影响及对策
The Influence of High Geo-stress Rock Burst on TBM Construction and its Countermeasures
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应用ANSYS结构分析软件数值仿真分析了高地应力非均质软岩洞室群的应力场与变形:进行了破裂岩石的注浆加固试验;
The stress and deformation of high geo-stress nonuniform soft rock cavern group is numerical simulated by using structure software ANSYS ; grouting reinforcement of broken rock is tested ;
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RMR分类没有考虑高地应力对围岩类别的影响。
However , the RMR method doesn 't consider the high field stress .
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分类结果表明,高地应力条件下,Q系统的适用性较好,RMR分类、HC分类、BQ分类适用性均差。
The classification results show that the Q-system has a good applicability and the other three methods have a bad applicability in the conditions of high field stress .
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BQ分类对岩石强度过于敏感。其分类结果在高地应力区过于保守。
The BQ method is too sensitive to the rock strength , it 's classification results are often conservative in the high field stress areas .
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本文利用台阶法开挖中存在的空间效应和改进的BP人工神经网络模型预测位移以及多项式拟合预测方法,提出了两类在高地应力软弱围岩条件下使用开挖应力释放率模型的方法。
Based on the space effect existing in the excavation of tunnel and forecast methods of improved BP artificial neural network and polynomials , two kinds of methods were put forward for the model to be applied in the weak rock tunnels with high geostress .
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某深埋隧洞局部地应力高达42MPa,局部外水压力高达10MPa,具有高地应力、高外水压力的特点。
A deep buried tunnel in China has the characteristics of high field stress and high external water pressure . It has reached 42 MPa field stress and 10 MPa external water pressure in some areas .
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一般认为,最大主应力大于20MPa属于高地应力,外水压力远大于1MPa为高外水压力。
In general , if the major principal stress is greater than 20 MPa , the field stress is called high field stress . And the high external water pressure is pointed to the external water pressure which is much greater than 1 MPa .
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高地应力松软煤层锚杆支护应用研究
Research of bolting in soft coal seam with high earth stress
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高地应力区隧洞稳定性的数值仿真分析
Numerical Simulation Analysis of Tunnel 's Stability Under High In-situ Stress
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高地应力煤巷掘进梯形支架优化设计
The Optimal Design on Trapezoidal Support in High Crustal Stress Tunneling
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高地应力下地下洞室群开挖过程的数值模拟
Numerical Simulation for Excavation of Underground Caverns Under High Geostress Conditions
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工程区高地应力判据研究及实例分析
High in-situ stress criteria for engineering area and a case analysis
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异常高地应力致密砂岩储层压裂技术研究
Fracturing techniques of tight sand reservoirs with abnormal high earth stress
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高地应力区结构性流变围岩稳定性研究
Stability Study on Surrounding Rock with Structural Rheology in High Stress Area
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高地应力区隧洞围岩稳定性分析
Study on the Stability of Tunnel Surrounding Rocks in High Geo-Stress Zone
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高地应力软弱围岩变形控制方法
Exploration on Control Method for Deformation of Stressed Highland Weak Surrounding Rock
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高地应力对坝基岩体稳定的影响
Influence of High In situ Stress on Stability of Dam Foundation Rock
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高地应力下地下工程岩爆机理及应用研究
Rock Burst Mechanism in High In-situ Stress and Application in Underground Engineering
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高地应力金属矿山开采及支护方案的数值模拟
Numerical Simulation of High Ground Stress Metal Mine Mining and Supporting Scheme
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高地应力地区拱坝坝基合理开挖形式的研究
On proper excavation of arch dam foundation in high terrestrial stress region
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金川矿区是典型的高地应力矿区。
Jinchuan mine is a high tectonic stress field .
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高地应力软岩巷道锚注支护技术
Technology of Bolting and Grouting Support in Soft Rock Roadway with High Stress
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高地应力与强渗透水压下软弱围岩支护
Support for weak surrounding rock under high geo-stress and high seepage pressure condition
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高地应力千枚岩大变形隧道支护参数试验研究
Experiment research on support parameters of large strain phyllite tunnel under high stress
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高地应力围岩挤压性大变形分析及数值模拟
Analysis on Large Deformation of Surrounding Rock Mass Squeezed by High Ground Stress
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深埋高地应力条件下的隧道支护技术研究
Research on Support Technology for Highly-stressed Tunnels at Depth